Zhu Ziyi, Janasik Molly, Fyffe Alexander, Hay Darrick, Zhou Yiyu, Kantor Brian, Winder Taylor, Boyd Robert W, Leuchs Gerd, Shi Zhimin
Department of Physics, University of South Florida, Tampa, FL, USA.
College of Natural Science, Michigan State University, East Lansing, MI, USA.
Nat Commun. 2021 Mar 12;12(1):1666. doi: 10.1038/s41467-021-21793-1.
Free-space optical communication is a promising means to establish versatile, secure and high-bandwidth communication between mobile nodes for many critical applications. While the spatial modes of light offer a degree of freedom to increase the information capacity of an optical link, atmospheric turbulence can introduce severe distortion to the spatial modes and lead to data degradation. Here, we demonstrate experimentally a vector-beam-based, turbulence-resilient communication protocol, namely spatial polarization differential phase shift keying (SPDPSK), that can reliably transmit high-dimensional information through a turbulent channel without the need of any adaptive optics for beam compensation. In a proof-of-principle experiment with a controllable turbulence cell, we measure a channel capacity of 4.84 bits per pulse using 34 vector modes through a turbulent channel with a scintillation index of 1.09, and 4.02 bits per pulse using 18 vector modes through even stronger turbulence corresponding to a scintillation index of 1.54.
自由空间光通信是一种很有前景的方式,可在移动节点之间建立通用、安全且高带宽的通信,用于许多关键应用。虽然光的空间模式为增加光链路的信息容量提供了一个自由度,但大气湍流会给空间模式带来严重失真并导致数据退化。在此,我们通过实验演示了一种基于矢量光束、抗湍流的通信协议,即空间偏振差分相移键控(SPDPSK),它能够在无需任何自适应光学器件进行光束补偿的情况下,通过湍流信道可靠地传输高维信息。在一个使用可控湍流池的原理验证实验中,我们通过闪烁指数为1.09的湍流信道,使用34种矢量模式测得每脉冲的信道容量为4.84比特;通过闪烁指数为1.54的更强湍流,使用18种矢量模式测得每脉冲的信道容量为4.02比特。